Ariga Katsuhiko, Yamauchi Yusuke
International Center for Materials Nanoarchitectonics MANA, National Institute for Materials Science NIMS, 1-1 Namiki, 305-0044, Tsukuba, Ibaraki, JAPAN.
University of Queensland, School of Chemical Engineering, AUSTRALIA.
Chem Asian J. 2020 Feb 3. doi: 10.1002/asia.202000106.
Functional materials with rational organization cannot be directly created only by nanotechnology-related top-down approaches. For this purpose, a novel research paradigm next to nanotechnology has to be established to create functional materials on the basis of deep nanotechnology knowledge. This task can be assigned to an emerging concept, nanoarchitectonics. In the nanoarchitectonics approaches, functional materials were architected through combination of atom/molecular manipulation, organic chemical synthesis, self-assembly and related spontaneous processes, field-applied assembly, micro/nano fabrications, and bio-related processes. In this short review article, nanoarchitectonics-related approaches on materials fabrications and functions are exemplified from atom-scale to living creature level. Based on their features, unsolved problems for future developments of the nanoarchitectonics concept are finally discussed.
仅通过与纳米技术相关的自上而下的方法,无法直接创建具有合理组织的功能材料。为此,必须建立一种纳米技术之外的新型研究范式,以便在深入的纳米技术知识基础上创建功能材料。这项任务可以交给一个新兴概念——纳米构筑学。在纳米构筑学方法中,功能材料是通过原子/分子操纵、有机化学合成、自组装及相关自发过程、场诱导组装、微/纳米制造以及生物相关过程的组合来构建的。在这篇简短的综述文章中,从原子尺度到生物层面列举了与纳米构筑学相关的材料制造及功能方法。基于其特点,最后讨论了纳米构筑学概念未来发展中尚未解决的问题。